HPE CX 8360v2 8360-24XF2C Ethernet Switch

HPESKU: 6604173

Price:
Sale price$22,616.22

Description

HPE CX 8360v2 8360-24XF2C Ethernet Switch

The Aruba CX 8360 v2 Switch Series, including the HPE CX 8360v2 8360-24XF2C Ethernet Switch, is engineered for the demands of modern mobile, cloud, and IoT ecosystems. It delivers a flexible, scalable, and secure platform for the core and aggregation layers of campus networks, while also supporting virtualized and data-center-inspired workloads. Built for performance and simplicity, this switch combines advanced routing, smart automation, and resilient design to help IT teams future-proof their networks as devices and applications proliferate across the organization.

  • High-density, scalable connectivity: Designed to support dense user and device environments, the HPE CX 8360v2 series provides robust port options and scalable uplinks to accommodate growing traffic, ensuring low latency and sustained throughput across campus campuses and enterprise campuses alike.
  • Security-first architecture: Integrated security features deliver end-to-end protection—from access control to threat intelligence integration—with policy-based automation that enforces consistent security postures across physical and virtual workloads, IoT devices, and multi-tenant environments.
  • Intelligent, intent-based management: Powered by Aruba AOS-CX, the switch offers enhanced analytics, proactive health checks, and automation-friendly workflows that simplify operations, reduce mean time to repair, and improve overall network reliability.
  • Cloud-ready and programmable: Seamless integration with Aruba Central enables centralized visibility, firmware orchestration, and scalable firmware lifecycles, while REST APIs and programmable interfaces empower developers and network engineers to implement automated policies and custom workflows.
  • Resilient design for uptime: With redundant power options, optional hot-swappable components, and robust hardware reliability, the CX 8360v2 is built to maximize uptime in demanding campus environments while delivering predictable performance under load.

Technical Details of HPE CX 8360v2 8360-24XF2C Ethernet Switch

  • Series and model: Aruba CX 8360v2 family; model 8360-24XF2C, part of the HPE Aruba CX product line, designed for core and aggregation roles on modern campuses.
  • Form factor and deployment: High-performance, rack-mountable switch intended for data-center style campus deployments, scalable to growing networks and virtualized environments.
  • Operating system and management: Runs Aruba AOS-CX with intent-based networking, analytics-driven insights, and automation capabilities; supports centralized management via Aruba Central and local CLI/GUI access for day-to-day operations.
  • Security features: Built-in micro-segmentation, ACLs, dynamic threat protection, and policy-driven security controls that enforce consistent policy across users, devices, and applications.
  • Automation and APIs: Supports REST-style APIs and automation workflows for faster provisioning, configuration, and remediation; designed to integrate with existing IT automation platforms and data-center orchestration tools.
  • Performance and reliability: Engineered for high-throughput, low-latency operation with resilient hardware architecture, redundant power options, and support for high-availability configurations among peers in a stack or cluster.
  • Power and cooling: Energy-efficient design with optional redundant power supplies and cooling requirements suitable for data-center and campus environments; designed for continuous operation with attention to cooling and airflow in dense deployments.
  • Software features: QoS and traffic engineering capabilities, virtualization support, advanced routing and switching features, and integration with security and network analytics tools to optimize user experience and application performance.

how to install HPE CX 8360v2 8360-24XF2C Ethernet Switch

Installing the HPE CX 8360v2 8360-24XF2C Ethernet Switch begins with planning the rack layout and power strategy to ensure optimal clearance, cooling, and cable management. Position the switch in a standard 19-inch rack with adequate ventilation and access to adjacent devices for cable pathways. If your deployment includes redundant power, install the second power supply and connect it to an independent power source to maximize uptime. Begin with a clean, documented inventory of all uplinks, downlinks, and device IDs to simplify later provisioning.

Next, establish initial connectivity and management access. Connect the management console or laptop to the switch’s management port or management VLAN, and ensure that DNS, NTP, and IP addressing are aligned with your network policy. Power on the device and verify that the system boots correctly, recognizing any hardware LEDs that indicate status or fault conditions. Access the web UI or CLI to perform initial configuration steps, including hostname, management IP address, and base security settings.

Configure the core policy framework and baseline security. Define user roles, access control lists, and automated policies that match your security posture. Implement QoS policies to prioritize latency-sensitive traffic for real-time applications, and configure routing or switching features appropriate for your campus topology. If you are using Aruba Central, enroll the switch in the cloud console to enable centralized monitoring, firmware management, and policy propagation across your network.

Validate connectivity and performance. Test uplink uplink bandwidth, verify redundancy paths, and run a simulated workload to observe how the switch handles peak traffic. Review analytics dashboards for health metrics, latency, and packet loss. Schedule firmware updates and security patches during maintenance windows and ensure a rollback plan is in place in case of any issues. Finally, document your final configuration for future audits and troubleshooting.

Ongoing management is simplified by the Aruba AOS-CX platform. Leverage automated health checks, proactive alerts, and routine policy reconfiguration to keep the network aligned with changing workloads. For cloud-managed deployments, use Aruba Central to monitor device status, push firmware updates, and orchestrate policy changes across multiple sites from a single pane of glass. Regularly review security logs, trust policies, and threat intelligence feeds to stay ahead of emerging risks while maintaining a seamless user experience for mobile, IoT, and cloud-based applications.

Frequently asked questions

  • What are the primary use cases for the HPE CX 8360v2 8360-24XF2C Ethernet Switch? This switch is designed for campus core and aggregation, data-center-inspired access layers, and virtualized workloads. It supports high-density connectivity, security enforcement at scale, and cloud-managed operations for streamlined IT administration.
  • How is management handled? It runs Aruba AOS-CX for intelligent, intent-based networking and can be managed locally via CLI/GUI or centrally through Aruba Central for cloud-based visibility, firmware management, and automation.
  • Does this model support PoE or PoE+? PoE capabilities depend on the specific SKU and configuration; consult the official specifications for PoE options and power budgets associated with 8360-24XF2C variants.
  • What security features are included? The switch includes policy-based security, ACLs, micro-segmentation, and threat intelligence integration to enforce secure network access and protect workloads across multiple domains.
  • What should I consider when planning a deployment with Aruba Central? Consider centralized monitoring, firmware lifecycle management, policy consistency, and scalability to multi-site environments. Centralized management simplifies provisioning, updates, and troubleshooting across campus networks.
  • How do I upgrade firmware and ensure compatibility? Use Aruba Central or the local management interface to perform firmware upgrades. Always review release notes for compatibility with your current hardware, licenses, and network topology, and schedule maintenance windows to minimize disruption.

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